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脱落酸 8'-羟化酶实用抑制剂 Abscinazole-E3M,可提高抗旱性。

Abscinazole-E3M, a practical inhibitor of abscisic acid 8'-hydroxylase for improving drought tolerance.

机构信息

College of Global-Interdisciplinary Studies, Academic Institute, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.

Arid Land Research Center, Tottori University, 1390 Hamasaka, Tottori 680-0001, Japan.

出版信息

Sci Rep. 2016 Nov 14;6:37060. doi: 10.1038/srep37060.

Abstract

Abscisic acid (ABA) is an essential phytohormone that regulates plant water use and drought tolerance. However, agricultural applications of ABA have been limited because of its rapid inactivation in plants, which involves hydroxylation of ABA by ABA 8'-hydroxylase (CYP707A). We previously developed a selective inhibitor of CYP707A, (-)-Abz-E2B, by structurally modifying S-uniconazole, which functions as an inhibitor of CYP707A and as a gibberellin biosynthetic enzyme. However, its synthetic yield is too low for practical applications. Therefore, we designed novel CYP707A inhibitors, Abz-T compounds, that have simpler structures in which the 1,2,3-triazolyl ring of (-)-Abz-E2B has been replaced with a triple bond. They were successfully synthesised in shorter steps, resulting in greater yields than that of (-)-Abz-E2B. In the enzymatic assays, one of the Abz-T compounds, (-)-Abz-E3M, acted as a strong and selective inhibitor of CYP707A, similar to (-)-Abz-E2B. Analysis of the biological effects in Arabidopsis revealed that (-)-Abz-E3M enhanced ABA's effects more than (-)-Abz-E2B in seed germination and in the expression of ABA-responsive genes. Treatment with (-)-Abz-E3M induced stomatal closure and improved drought tolerance in Arabidopsis. Furthermore, (-)-Abz-E3M also increased the ABA response in rice and maize. Thus, (-)-Abz-E3M is a more practical and effective inhibitor of CYP707A than (-)-Abz-E2B.

摘要

脱落酸(ABA)是一种重要的植物激素,可调节植物水分利用和抗旱性。然而,由于 ABA 在植物体内迅速失活,涉及 ABA8'-羟化酶(CYP707A)对 ABA 的羟化,因此 ABA 的农业应用受到限制。我们之前通过对 S-烯效唑进行结构修饰,开发了 CYP707A 的选择性抑制剂(-)-Abz-E2B,它作为 CYP707A 的抑制剂和赤霉素生物合成酶发挥作用。然而,其合成产率太低,无法实际应用。因此,我们设计了结构更简单的新型 CYP707A 抑制剂 Abz-T 化合物,其中(-)-Abz-E2B 的 1,2,3-三唑环已被叁键取代。它们的合成步骤更短,产率高于(-)-Abz-E2B。在酶促测定中,Abz-T 化合物之一(-)-Abz-E3M 作为 CYP707A 的强选择性抑制剂发挥作用,与(-)-Abz-E2B 相似。在拟南芥中的生物学效应分析表明,(-)-Abz-E3M 在种子萌发和 ABA 响应基因的表达中增强了 ABA 的作用,比(-)-Abz-E2B 更有效。(-)-Abz-E3M 处理诱导气孔关闭并提高了拟南芥的抗旱性。此外,(-)-Abz-E3M 还增加了水稻和玉米中的 ABA 响应。因此,(-)-Abz-E3M 是比(-)-Abz-E2B 更实用和有效的 CYP707A 抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d76b/5107945/834fc73b420b/srep37060-f1.jpg

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